Abstract: Density functional theory in the generalized gradient approximation is used to study the influence of carbon sublattice on the energy band structure and chemical bonding in the isoelectronic series of HgCN2, HgCP2, HgCAs2, HgCSb2 crystals with chalcopyrite structure. The changes in the energy band spectra and valence-electron deformation density maps are studied depending on the varying role of carbon in the C–X bonding. © 2020, Pleiades Publishing, Ltd
Using density functional theory and generalized gradient approximation for exchange and correlation,...
This article reports the results of investigations based on local-density-functional theory into the...
We have performed a systematic density-functional study of the mercury chalcogenide compounds beta-H...
Abstract: Isoelectronic series of Hg–IV–V2 (IV = C, Si, Ge, Sn; V = N, P, As, Sb) crystals with chal...
The correct treatment of d electrons is of prime importance in order to predict the electronic prope...
We have performed a systematic density-functional study of the mercury chalcogenide compounds $\beta...
We have performed a systematic density-functional study of the mercury chalcogenide compounds beta-H...
We use first-principles density functional theory to calculate the phonon frequencies, electron loca...
AbstractWe study the crystals structure and stability of four possible polymorphs of HgCl2 using fir...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Using density functional theory, we study the energetics and electronic structures of graphene with ...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
The precise nature of chemical-bonding interactions in amorphous, and crystalline, chalcogenides is ...
Using density functional theory and generalized gradient approximation for exchange and correlation,...
This article reports the results of investigations based on local-density-functional theory into the...
We have performed a systematic density-functional study of the mercury chalcogenide compounds beta-H...
Abstract: Isoelectronic series of Hg–IV–V2 (IV = C, Si, Ge, Sn; V = N, P, As, Sb) crystals with chal...
The correct treatment of d electrons is of prime importance in order to predict the electronic prope...
We have performed a systematic density-functional study of the mercury chalcogenide compounds $\beta...
We have performed a systematic density-functional study of the mercury chalcogenide compounds beta-H...
We use first-principles density functional theory to calculate the phonon frequencies, electron loca...
AbstractWe study the crystals structure and stability of four possible polymorphs of HgCl2 using fir...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Using density functional theory, we study the energetics and electronic structures of graphene with ...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
The precise nature of chemical-bonding interactions in amorphous, and crystalline, chalcogenides is ...
Using density functional theory and generalized gradient approximation for exchange and correlation,...
This article reports the results of investigations based on local-density-functional theory into the...
We have performed a systematic density-functional study of the mercury chalcogenide compounds beta-H...